Research Center for Applied Sciences, Academia Sinica, Taipei, Taiwan.
Small. 2011 Oct 17;7(20):2906-13. doi: 10.1002/smll.201100753. Epub 2011 Aug 22.
The formation of focal adhesions on various sizes of fibronectin patterns, ranging from 200 μm to 250 nm, was systematically investigated by total internal reflection fluorescence microscopy and super-resolution imaging. It was found that cells adhered to and spread on these micro/nanopatterns, forming focal adhesions. On a micrometer scale the shape of the focal adhesions was elongated. However, on the nanometer scale, the shape of focal adhesions became dotlike. To further explore the distribution of focal adhesion proteins formed on surfaces, a localization-based super-resolution imaging technique was employed in order to determine the position and density of vinculin proteins. A characteristic distance of 50 nm was found between vinculin molecules in the focal adhesions, which did not depend on the size of the fibronectin nanopatterns. This distance was found to be crucial for the formation of focal adhesions. In addition, the density of vinculin at the focal adhesions formed on the nanopatterns increased as the pattern size decreased. The density of the protein was found to be 425 ± 247, 584 ± 302, and 703 ± 305 proteins μm(-2) on the 600, 400, and 250 nm fibronectin patterns respectively. Whereas 226 ± 77 proteins μm(-2) was measured for the matured focal adhesions on homogeneous fibronectin coated substrates. The increase in vinculin density implies that an increase in mechanical load was applied to the focal adhesions formed on the smaller nanopatterns.
通过全内反射荧光显微镜和超分辨率成像,系统地研究了在从 200μm 到 250nm 的各种大小的纤维连接蛋白图案上形成的粘着斑。结果发现细胞在这些微/纳米图案上黏附和扩展,形成粘着斑。在微米尺度上,粘着斑的形状是拉长的。然而,在纳米尺度上,粘着斑的形状变成点状。为了进一步研究在表面上形成的粘着斑蛋白的分布,采用了基于定位的超分辨率成像技术来确定 vinculin 蛋白的位置和密度。发现粘着斑中 vinculin 分子之间存在 50nm 的特征距离,这与纤维连接蛋白纳米图案的大小无关。该距离对于粘着斑的形成至关重要。此外,在纳米图案上形成的粘着斑中 vinculin 的密度随着图案尺寸的减小而增加。在纤维连接蛋白图案为 600nm、400nm 和 250nm 时,粘着斑处的蛋白密度分别为 425±247、584±302 和 703±305 个蛋白/μm2。而在均质纤维连接蛋白涂覆的基底上成熟的粘着斑处测量到的蛋白密度为 226±77 个蛋白/μm2。vinculin 密度的增加意味着在较小的纳米图案上形成的粘着斑上施加了更大的机械负载。